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A solid with a low melting point is most likely a. ionic. c. metallic. b. covalent. d. None of the above
A solid with a low melting point is most likely be a covalent.
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Asked 5/23/2013 10:37:15 AM
Updated 7/25/2014 12:19:18 AM
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A solid with a low melting point is most likely be a covalent.
Added 7/25/2014 12:19:18 AM
This answer has been confirmed as correct and helpful.
Confirmed by jeifunk [7/25/2014 12:52:04 AM], Rated good by jeifunk
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Which of the following diatomic molecules is joined by a double covalent bond? a. O2 c. N2 b. Cl2 d. He2
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Updated 10/14/2014 4:31:00 PM
1 Answer/Comment
O2 (oxygen) is the diatomic molecule that is joined by a double covalent bond

Added 10/14/2014 4:30:58 PM
This answer has been confirmed as correct and helpful.
London dispersion force is considered a dipole-dipole force because it a. affects all types of compounds. c. affects polar molecules. b. affects nonpolar molecules. d. results from a temporary dipole.
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Updated 2/2/2014 1:25:11 PM
1 Answer/Comment
London Dispersion force are considered a dipole-dipole force because it d. results from a temporary dipole.
Added 2/2/2014 1:25:11 PM
This answer has been confirmed as correct and helpful.
The term, entropy, describes the disorder in a system. True or False
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Updated 9/10/2016 1:47:59 PM
1 Answer/Comment
The term, entropy, describes the disorder in a system. TRUE.

Added 9/10/2016 11:47:17 AM
This answer has been confirmed as correct and helpful.
Confirmed by Andrew. [9/10/2016 1:47:53 PM]
Which of the following is NOT an empirical formula? a. C2N2H8 c. BeCr2O7 b. C3H8O d. Sb2S3
Weegy: C2N2H8-is NOT an empirical formula (More)
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Expert Answered
Updated 2/4/2014 6:37:05 AM
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A hydrogen bond is a special form of a(n) a. covalent bond. c. ionic bond. b. dipole-dipole force. d. London dispersion force.
Weegy: a. covalent bond (More)
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Updated 2/1/2015 4:08:58 AM
1 Answer/Comment
A hydrogen bond is a special form of dipole-dipole force.
Added 2/1/2015 4:08:57 AM
This answer has been confirmed as correct and helpful.
Confirmed by jeifunk [2/1/2015 4:17:44 AM]
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